Abstract
Two-dimensional (2D) metals can host gapless plasmonic excitations that strongly couple to electrons and thus may significantly affect superconductivity. To investigate the dynamical interplay of the electron-electron and electron-phonon interactions in the theory of 2D superconductivity, we apply a full momentum- and frequency-dependent one-loop theory treating electron-phonon, electron-plasmon, and phonon-plasmon coupling with the same accuracy. We tune the strength of the Coulomb interaction by varying the external screening ϵ e x t to the layered superconductor and find three distinct regions. At weak screening, superconductivity is mediated by plasmons. In the opposite limit conventional electron-phonon interactions dominate. In between, we find a suppressed superconducting state. Our results show that even in conventional electron-phonon coupled layered materials, superconductivity can be significantly enhanced by the electron-plasmon coupling in a manner that can be controlled by the external screening.
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CITATION STYLE
in’t Veld, Y., Katsnelson, M. I., Millis, A. J., & Rösner, M. (2023). Screening induced crossover between phonon- and plasmon-mediated pairing in layered superconductors. 2D Materials, 10(4). https://doi.org/10.1088/2053-1583/acf944
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